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Time and Life in the Relational Universe: Prolegomena to an Integral Paradigm of Natural Philosophy

机译:关系宇宙中的时间与生命:自然哲学整体范式的前言

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Relational ideas for our description of the natural world can be traced to the concept of Anaxagoras on the multiplicity of basic particles, later called “homoiomeroi” by Aristotle, that constitute the Universe and have the same nature as the whole world. Leibniz viewed the Universe as an infinite set of embodied logical essences called monads, which possess inner view, compute their own programs and perform mathematical transformations of their qualities, independently of all other monads. In this paradigm, space appears as a relational order of co-existences and time as a relational order of sequences. The relational paradigm was recognized in physics as a dependence of the spatiotemporal structure and its actualization on the observer. In the foundations of mathematics, the basic logical principles are united with the basic geometrical principles that are generic to the unfolding of internal logic. These principles appear as universal topological structures (“geometric atoms”) shaping the world. The decision-making system performs internal quantum reduction which is described by external observers via the probability function. In biology, individual systems operate as separate relational domains. The wave function superposition is restricted within a single domain and does not expand outside it, which corresponds to the statement of Leibniz that “monads have no windows”.
机译:我们对自然界的描述的关系思想可以追溯到Anashagoras关于多种基本粒子的概念,后来被称为“ homoiomeroi”。由亚里斯多德(Aristotle)所组成,它构成了宇宙,并且与整个世界具有相同的性质。莱布尼兹将宇宙视为被称为单子的无穷逻辑本体的无穷集合,它们具有内部视图,计算自己的程序并对其质量进行数学转换,而与所有其他单子无关。在这种范式中,空间表现为共存的关系顺序,而时间表现为序列的关系顺序。关系范式在物理学中被认为是时空结构及其对观察者的实现的依赖。在数学基础中,基本逻辑原理与内部逻辑展开通用的基本几何原理结合在一起。这些原理表现为塑造世界的通用拓扑结构(“几何原子”)。决策系统执行内部量子约简,由外部观察者通过概率函数进行描述。在生物学中,各个系统充当独立的关系域。波动函数叠加被限制在单个域内,并且不在其外部扩展,这与莱布尼兹关于“单子没有窗口”的说法相对应。

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